Baoquan Chen
Most Recent Affiliation(s):
- Peking University, Shenzhen VisuCA Key Lab / SIAT, University of Minnesota, CFCS
Other Affiliation(s):
- Beijing Film Academy, AICFVE
- Shandong University
Learning Presentation(s):
![Example-based Motion Synthesis via Generative Motion Matching](https://history.siggraph.org/wp-content/uploads/2024/02/2023-Tech-Papers-Li_Example-based-Motion-Synthesis-via-Generative-Motion-Matching-150x150.jpg)
Type: [Technical Papers]
Example-based Motion Synthesis via Generative Motion Matching Presenter(s): [Li] [Chen] [Li] [Sorkine-Hornung] [Chen]
[SIGGRAPH 2023]
![Joint neural phase retrieval and compression for energy- and computation-efficient holography on the edge](https://history.siggraph.org/wp-content/uploads/2023/06/2022-Technical-Papers-Wang_-Joint-Neural-Phase-Retrieval-and-Compression-for-Energy-and-Computation-efficient-Holography-on-the-Edge-150x150.jpg)
Type: [Technical Papers]
Joint neural phase retrieval and compression for energy- and computation-efficient holography on the edge Presenter(s): [Wang] [Chakravarthula] [Sun] [Chen]
[SIGGRAPH 2022]
![Simulation and optimization of magnetoelastic thin shells](https://history.siggraph.org/wp-content/uploads/2023/06/2022-Technical-Papers-Chen_-Simulation-and-Optimization-of-Magnetoelastic-Thin-Shells-150x150.jpg)
Type: [Technical Papers]
Simulation and optimization of magnetoelastic thin shells Presenter(s): [Chen] [Ni] [Zhu] [Wang] [Chen]
[SIGGRAPH 2022]
![Learning skeletal articulations with neural blend shapes](https://history.siggraph.org/wp-content/uploads/2023/06/2021-Technical-Papers-Li_Learning-Skeletal-Articulations-with-Neural-Blend-Shapes-150x150.jpg)
Type: [Technical Papers]
Learning skeletal articulations with neural blend shapes Presenter(s): [Zhang] [Aberman] [Hanocka] [Liu] [Sorkine-Hornung] [Chen]
[SIGGRAPH 2021]
![Solid-fluid interaction with surface-tension-dominant contact](https://history.siggraph.org/wp-content/uploads/2023/06/2021-Technical-Papers-Ruan_Solid-Fluid-Interaction-with-Surface-Tension-Dominant-Contact-150x150.jpg)
Type: [Technical Papers]
Solid-fluid interaction with surface-tension-dominant contact Presenter(s): [Ruan] [Liu] [Zhu] [Sueda] [Wang] [Chen]
[SIGGRAPH 2021]
![A Level-Set Method for Magnetic Substance Simulation](https://history.siggraph.org/wp-content/uploads/2023/01/2020-Technical-Papers-Ni_A-Level-Set-Method-for-Magnetic-Substance-Simulation-150x150.jpg)
Type: [Technical Papers]
A Level-Set Method for Magnetic Substance Simulation Presenter(s): [Ni] [Zhu] [Wang] [Chen]
[SIGGRAPH 2020]
![Example-driven Virtual Cinematography by Learning CameraBehaviors](https://history.siggraph.org/wp-content/uploads/2022/09/2020-Technical-Papers-Jiang_Example-driven-Virtual-Cinematography-by-Learning-Camera-Behaviors-150x150.jpg)
Type: [Technical Papers]
Example-driven Virtual Cinematography by Learning CameraBehaviors Presenter(s): [Jiang] [Wang] [Wang] [Christie] [Chen]
[SIGGRAPH 2020]
![Skeleton-Aware Networks for Deep Motion Retargeting](https://history.siggraph.org/wp-content/uploads/2022/09/2020-Technical-Papers-Aberman_Skeleton-Aware-Networks-for-Deep-Motion-Retargeting-150x150.jpg)
Type: [Technical Papers]
Skeleton-Aware Networks for Deep Motion Retargeting Presenter(s): [Aberman] [Li] [Lischinski] [Sorkine-Hornung] [Cohen-Or] [Chen]
[SIGGRAPH 2020]
![Unpaired Motion Style Transfer from Video to Animation](https://history.siggraph.org/wp-content/uploads/2022/09/2020-Technical-Papers-Aberman_Unpaired-Motion-Style-Transfer-from-Video-to-Animation-150x150.jpg)
Type: [Technical Papers]
Unpaired Motion Style Transfer from Video to Animation Presenter(s): [Aberman] [Weng] [Lischinski] [Cohen-Or] [Chen]
[SIGGRAPH 2020]
![Efficient and conservative fluids using bidirectional mapping](https://history.siggraph.org/wp-content/uploads/2023/01/2019-Technical-Papers-Qu_Efficient-and-Conservative-Fluids-Using-Bidirectional-Mapping-150x150.jpg)
Type: [Technical Papers]
Efficient and conservative fluids using bidirectional mapping Presenter(s): [Qu] [Zhang] [Gao] [Jiang] [Chen]
[SIGGRAPH 2019]
![GRAINS: Generative Recursive Autoencoders for INdoor Scenes](https://history.siggraph.org/wp-content/uploads/2022/07/2019-SIGGRAPH-Image-Not-Available-150x150.jpg)
Type: [Technical Papers]
GRAINS: Generative Recursive Autoencoders for INdoor Scenes Presenter(s): [Li] [Patil] [Xu] [Chaudhuri] [Khan] [Shamir] [Tu] [Chen] [Cohen-Or] [Zhang]
[SIGGRAPH 2019]
![Learning character-agnostic motion for motion retargeting in 2D](https://history.siggraph.org/wp-content/uploads/2023/01/2019-Technical-Papers-Aberman_Learning-Character-Agnostic-Motion-for-Motion-Retargeting-in-2D-150x150.jpg)
Type: [Technical Papers]
Learning character-agnostic motion for motion retargeting in 2D Presenter(s): [Aberman] [Wu] [Lischinski] [Chen] [Cohen-Or]
[SIGGRAPH 2019]
![Multi-robot collaborative dense scene reconstruction](https://history.siggraph.org/wp-content/uploads/2023/01/2019-Technical-Papers-Dong_Multi-Robot-Collaborative-Dense-Scene-Reconstruction-150x150.jpg)
Type: [Technical Papers]
Multi-robot collaborative dense scene reconstruction Presenter(s): [Dong] [Xu] [Zhou] [Tagliasacchi] [Xin] [Niessner] [Chen]
[SIGGRAPH 2019]
![Neural best-buddies: sparse cross-domain correspondence](https://history.siggraph.org/wp-content/uploads/2023/02/2018-Technical-Papers-Aberman_Neural-Best-Buddies-Sparse-Cross-Domain-Correspondence-150x150.jpg)
Type: [Technical Papers]
Neural best-buddies: sparse cross-domain correspondence Presenter(s): [Aberman] [Liao] [Shi] [Lischinski] [Chen] [Cohen-Or]
Entry No.: [69]
[SIGGRAPH 2018]
![Dip transform for 3D shape reconstruction](https://history.siggraph.org/wp-content/uploads/2023/02/2017-Technical-Papers-Aberman_Dip-Transform-for-3D-Shape-Reconstruction-150x150.jpg)
Type: [Technical Papers]
Dip transform for 3D shape reconstruction Presenter(s): [Aberman] [Katzir] [Zhou] [Luo] [Sharf] [Greif] [Chen] [Cohen-Or]
[SIGGRAPH 2017]
![Wasserstein Blue Noise Sampling](https://history.siggraph.org/wp-content/uploads/2022/07/2017-SIGGRAPH-Image-Not-Available-150x150.jpg)
Type: [Technical Papers]
Wasserstein Blue Noise Sampling Presenter(s): [Qin] [Chen] [He] [Chen]
[SIGGRAPH 2017]
![Connected fermat spirals for layered fabrication](https://history.siggraph.org/wp-content/uploads/2023/02/2016-Technical-Papers-Zhao_Connected-Fermat-Spirals-for-Layered-Fabrication-150x150.jpg)
Type: [Technical Papers]
Connected fermat spirals for layered fabrication Presenter(s): [Zhao] [Gu] [Huang] [Garcia] [Chen] [Tu] [Benes] [Zhang] [Cohen-Or] [Chen]
[SIGGRAPH 2016]
![Modeling Plant Life in Computer Graphics](https://history.siggraph.org/wp-content/uploads/2022/02/2016-27-Modeling-Plant-Life-in-Computer-Graphics-150x150.jpg)
Type: [Courses]
Modeling Plant Life in Computer Graphics Organizer(s): [Pirk]
Presenter(s): [Benes] [Deussen] [Mech] [Chen] [Ijiri]
Entry No.: [27]
[SIGGRAPH 2016]
![Printed Perforated Lampshades for Continuous Projective Images](https://history.siggraph.org/wp-content/uploads/2022/06/2016-Image-Not-Available-150x150.jpg)
Type: [Technical Papers]
Printed Perforated Lampshades for Continuous Projective Images Presenter(s): [Zhao] [Lu] [Wei] [Lischinski] [Sharf] [Cohen-Or] [Chen]
[SIGGRAPH 2016]
![Build-to-last: strength to weight 3D printed objects](https://history.siggraph.org/wp-content/uploads/2023/02/2014-Technical-Papers-Lu_Build-to-Last-Strength-to-Weight-3D-Printed-Objects-150x150.jpg)
Type: [Technical Papers]
Build-to-last: strength to weight 3D printed objects Presenter(s): [Lu] [Sharf] [Zhao] [Wei] [Fan] [Chen] [Savoye] [Tu] [Cohen-Or] [Chen]
[SIGGRAPH 2014]
![Proactive 3D scanning of inaccessible parts](https://history.siggraph.org/wp-content/uploads/2023/03/2014-Technical-Papers-Yan_Proactive-3D-Scanning-of-Inaccessible-Parts-150x150.jpg)
Type: [Technical Papers]
Proactive 3D scanning of inaccessible parts Presenter(s): [Yan] [Sharf] [Lin] [Huang] [Chen]
[SIGGRAPH 2014]
![L1-medial skeleton of point cloud](https://history.siggraph.org/wp-content/uploads/2023/03/2013-Technical-Papers-Huang_L1-Medial-Skeleton-of-Point-Cloud-150x150.jpg)
Type: [Technical Papers]
L1-medial skeleton of point cloud Presenter(s): [Huang] [Wu] [Cohen-Or] [Gong] [Zhang] [Li] [Chen]
[SIGGRAPH 2013]
![Layered analysis of irregular facades via symmetry maximization](https://history.siggraph.org/wp-content/uploads/2023/03/2013-Technical-Papers-Zhang_Layered-Analysis-of-Irregular-Facades-via-Symmetry-Maximization-150x150.jpg)
Type: [Technical Papers]
Layered analysis of irregular facades via symmetry maximization Presenter(s): [Zhang] [Xu] [Lin] [Cohen-Or] [Chen]
[SIGGRAPH 2013]
![Fit and diverse: set evolution for inspiring 3D shape galleries](https://history.siggraph.org/wp-content/uploads/2023/03/2012-Technical-Papers-Xu_Fit-and-Diverse-Set-Evolution-for-Inspiring-3D-Shape-Galleries-150x150.jpg)
Type: [Technical Papers]
Fit and diverse: set evolution for inspiring 3D shape galleries Presenter(s): [Xu] [Zhang] [Cohen-Or] [Chen]
[SIGGRAPH 2012]
![Texture-lobes for tree modelling](https://history.siggraph.org/wp-content/uploads/2022/07/2011-SIGGRAPH-Image-Not-Available-150x150.jpg)
Type: [Technical Papers]
Texture-lobes for tree modelling Presenter(s): [Livny] [Pirk] [Cheng] [Yan] [Deussen] [Cohen-Or] [Chen]
[SIGGRAPH 2011]
![Non-local scan consolidation for 3D urban scenes](https://history.siggraph.org/wp-content/uploads/2023/03/2010-Technical-Papers-Zheng_Non-local-Scan-Consolidation-for-3D-Urban-Scenes-150x150.jpg)
Type: [Technical Papers]
Non-local scan consolidation for 3D urban scenes Presenter(s): [Zheng] [Sharf] [Wan] [Li] [Mitra] [Cohen-Or] [Chen]
[SIGGRAPH 2010]
![SmartBoxes for interactive urban reconstruction](https://history.siggraph.org/wp-content/uploads/2023/03/2010-Technical-Papers-Nan_SmartBoxes-for-Interactive-Urban-Reconstruction-150x150.jpg)
Type: [Technical Papers]
SmartBoxes for interactive urban reconstruction Presenter(s): [Nan] [Sharf] [Zhang] [Cohen-Or] [Chen]
[SIGGRAPH 2010]
![Knowledge-Based Modeling of Laser-Scanned Trees](https://history.siggraph.org/wp-content/uploads/2023/01/2005-Talks-Xu_Knowledge-Based-Modeling-of-Laser-Scanned-Trees-01-150x150.jpg)
Type: [Talks (Sketches)]
Knowledge-Based Modeling of Laser-Scanned Trees Presenter(s): [Xu] [Gossett] [Chen]
[SIGGRAPH 2005]
Role(s):
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